Abstract:
A method and work material for making embossed blanks for sample packages and other free-standing three dimensional display items from a sheet-type work material includes a printer for printing a graphic image on the work material, and a processing mechanism for performing work operations on the work material. The sheet-type work material has a top layer of sheet material, an intermediate layer of sheet material, and a carrier layer of sheet material, with a first layer of adhesive material bonding the top and intermediate layers of sheet material together, and a second layer of adhesive material bonding the intermediate and carrier layers of sheet material together. Any, all, or a combination of the top, intermediate, or carrier layers of sheet material may have shape retaining deformability characteristics to aid in holding an embossed design in the work material. In operation, the printer prints an image onto the work material, which is then advanced to the processing mechanism where a creaser places indented fold lines into the work material, a knife cuts the blank from the work material, and an embosser, moving in either a rasterwise or vectorial motion, embosses a design into the work material. The blank can then be removed from the work material and erected into a package or other free-standing three dimensional display item.
Abstract:
A method for making embossed blanks for sample packages and other free-standing three dimensional display items from a sheet-type work material. The sheet-type work material has a top layer of sheet material, an intermediate layer of sheet material, and a carrier layer of sheet material. In operation, a printer prints an image onto the work material, which is then advanced to a processing mechanism where a creaser places indented fold lines into the work material, a knife cuts a blank from the work material, and an embosser embosses a design into the work material.
Abstract:
The invention relates to apparatus clamping at least one paper or non-woven sheet and including two cylinders which run substantially tangent to one another. At least one of the cylinders has on its surface and in a zone that makes contact with the sheet a clamping band having first salient elements. The interaction of the two cylinders in the presence or absence of the sheet subtends an active surface during the rotation of the cylinders. In the invention, at least one of the cylinders has on its surface and in a zone (nip) that makes contact with the other cylinder by means or not of the sheet a load compensating band having second salient elements. This band is selected so that the variation of the consecutive instantaneous active surfaces of the clamping band and of the load compensating band is less than the variation of the consecutive instantaneous active surfaces of the clamping band alone. The invention applies in particular to converting paper or non-woven sheets in the manufacture of absorbent paper items, such as tissues or table napkins.
Abstract:
The cellulose fiber (tissue) product of the invention, such as a handkerchief or napkin, is made by combining at least two tissue plies cut into a desired format and connected to one another along a peripheral zone, and is characterized in that the plies are adhesively bonded along the perhipheral zone in such a manner that they evince a minimum delamination strength of 1 g/cm, and the peripheral zone is less than 50% of the total product surface.
Abstract translation:本发明的纤维素纤维(组织)产品如手帕或餐巾是通过将至少两个切割成所需形式的组织层并沿着周边区域彼此连接而制成的,其特征在于: 沿着周边区域以这样的方式粘合地结合,使得它们表现出1g / cm 2的最小分层强度,并且周边区域小于总产品表面的50%。
Abstract:
A system is disclosed for securing registration of a patterned embossing roll with a similarly patterned printed moving web. The purpose of the embossing roll is to indent the surface of the printed web in register with the printing in certain designated areas. In one embodiment, a series of randomly spaced register marks on the printed web selvage edge and identically spaced register marks on the embossing roll are viewed by appropriate scanners. Electrical signatures representing the two sets of register marks are generated by the sensors and fed to a signal correlator for comparison. The correlator determines the degree of statistical error between the two signatures and displays this error in the form of a time delay on a CRT (Cathode Ray Tube). If manual registration control is desired, an operator can manually adjust the speed or phase of the embossing roll by observing the peaked wave display on the CRT to bring the roll into a statistical best fit of the embossing pattern with the printed pattern. Automatic control of embossing roll speed and orientation to achieve registration is also possible if the correlator is interfaced with a digital computer and servo correction motors on the embosser drive system. The disclosed system is an improvement over conventional benchmark oriented registration sensing and control systems in that it is capable of continuous error determinations and asynchronous error corrections on demand rather than periodically at the end of pattern length intervals.
Abstract in simplified Chinese:本发明系有关于一种可同时施行合成树脂花边图案素材之成形与将其表面彩色上色印刷之合成树脂彩色花边图案素材的制造方法。
本发明之合成树脂彩色花边图案素材的制造方法,系主要在成形成辊4的周表面配设形成平坦花边部2与三維凸出图案部3之凹模hl~h3,该成形辊4的周表面系借由使形成平坦花边部2之凹模hl的部份约切削20μ左右,自成形辊4的周表面使平坦花边部2之凹模hl比凸出图案部3之凹模h2,h3更朝内边位置在凸出图案部3与平坦花边部2形成界线,更在该成形辊4上配设多个之上色机构12a~12c,在各凹模hl~h3供给转印不同色调A,B,C之色料,总之借着在各凹模hl~h3填充溶融合成树脂制造无色差、混色之印刷不齐的鲜明上色之彩色花边图案素材l。
Abstract in simplified Chinese:可丢弃纸产品,诸如纸巾,设有一标记设备,其以一种不连续或组合不连续/连续图案配置于该可丢弃纸产品上。标记设备提供目视可辨识之信号指示出该可丢弃纸产品所希望之特性是否仍保持着,甚至在可丢弃纸产品被实质上为透明含水液体弄湿后。本发明之可丢弃纸产品被实际透明含水液体潮湿时,可丢弃纸产品之潮湿灰阶度差异至少约为64灰阶度单位。
Abstract:
PROBLEM TO BE SOLVED: To provide an embossing method capable of obtaining relatively high production capacity and accuracy.SOLUTION: The method for embossing a product 2 with a rotary embossing unit 10 includes controlling the rotation of at least one embossing roller 13 in response to the detection of a mark 26 on the product 2 by a sensor.